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Developing a machine equivalent inertial response for a Virtual Oscillator Controlled Inverter in a machine-inverter based microgrid

机译:在基于机器逆变器的微电网中为虚拟振荡器控制的逆变器开发机器等效惯性响应

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Virtual Oscillator Control (VOC) is a decentralized grid-forming inverter control strategy that emulates the dynamics of a class of nonlinear oscillator. It is currently being considered as a promising alternative to conventional power frequency droop control for microgrids. However, the inertial response associated with VOC has proved challenging to quantify. In this paper the per unit inertia constant of a VOC inverter is derived when coupled with a synchronous generator (SG), for a micro-grid operating in an islanded configuration. A proportional derivative (PD) controller is then added to the VOC regulator to create a similar response to that provided by the inertia of a conventional rotating machine SG. Combined with the swing equation of the SG, the equivalent inertia constant of the VOC inverter is expressed analytically as a simple function of control parameters. The effect of altering the equivalent VOC inertia constant is investigated using small-signal analysis, and then assessed and verified by simulation and experiment. The time-domain results under transient conditions of the SG machine frequency variations and the inverter output current verify the analysis and demonstrate the limits of equivalent inertia that can be developed.
机译:虚拟振荡器控制(VOC)是一种分散的网格形成逆变器控制策略,可模拟一类非线性振荡器的动态特性。目前,它被认为是微电网常规工频下降控制的有前途的替代方法。但是,已证明与VOC相关的惯性响应难以量化。在本文中,VOC逆变器与同步发电机(SG)耦合时可得出其单惯性常数,适用于在孤岛配置下运行的微电网。然后,将比例微分(PD)控制器添加到VOC调节器,以产生与常规旋转电机SG的惯性所提供的响应相似的响应。结合SG的摆动方程,VOC逆变器的等效惯性常数解析表示为控制参数的简单函数。使用小信号分析研究了等效VOC惯性常数变化的影响,然后通过仿真和实验对其进行了评估和验证。 SG电机频率变化的瞬态条件下的时域结果以及逆变器输出电流验证了分析结果,并证明了可以发展的等效惯性极限。

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